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The gas sensing properties of one-pot prepared porphyrin-ZnO nanoparticles

机译:一锅法制备的卟啉-ZnO纳米粒子的气敏特性

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Hybrid materials formed by a layer of dye molecules over a wide-band gap semiconductor, are widely studied mainly for optoelectronic and photovoltaic applications. However, besides the conversion of visible photons into an excess of carriers, the combination of organic-inorganic materials offers other additional properties, such as chemical sensing. ZnO and porphyrins are a good example of the combination of a metal oxide semiconductor and a dye molecule. In this paper we investigated the sensing properties of one-pot prepared ZnO nanoparticles, by means of chemoresistive transduction. The results indicate that the presence of porphyrins in the precursor solution affects both the morphology and the sensing properties. This result is important for sensor arrays design, where broadly-selective, but different sensors are required.
机译:由宽带隙半导体上的染料分子层形成的杂化材料主要用于光电和光伏应用,已得到广泛研究。但是,除了将可见光子转换成过量的载流子外,有机-无机材料的组合还提供了其他附加属性,例如化学传感。 ZnO和卟啉是金属氧化物半导体和染料分子结合的好例子。在本文中,我们通过化学阻滞性转导研究了一锅法制备的ZnO纳米颗粒的传感特性。结果表明,前体溶液中卟啉的存在会影响形态和感测特性。对于需要广泛选择但需要不同传感器的传感器阵列设计,此结果非常重要。

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